Title :
Robust synthesis for master-slave synchronization of Lur´e systems
Author :
Suykens, Johan A K ; Curran, Paul F. ; Chua, Leon O.
Author_Institution :
Dept. of Electr. Eng., Katholieke Univ., Leuven, Belgium
fDate :
7/1/1999 12:00:00 AM
Abstract :
In this paper a method for robust synthesis of full static-state error feedback and dynamic-output error feedback for master-slave synchronization of Lur´e systems is presented. Parameter mismatch between the systems is considered in the synchronization schemes. Sufficient conditions for uniform synchronization with a bound on the synchronization error are derived, based on a quadratic Lyapunov function. The matrix inequalities from the case without parameter mismatch between the Lur´e systems remain preserved, but an additional robustness criterion must be taken into account. The robustness criterion is based on an uncertainty relation between the synchronization error bound and the parameter mismatch. The robust synthesis method is illustrated on Chua´s circuit with the double scroll. One observes that it is possible to synchronize the master-slave systems up to a relatively small error bound, even in the case of different qualitative behavior between the master and the uncontrolled slave system, such as limit cycles and stable equilibria
Keywords :
Chua´s circuit; Lyapunov methods; circuit feedback; circuit stability; error analysis; matrix algebra; nonlinear network synthesis; synchronisation; Chua circuit; Lur´e systems; double scroll; dynamic-output error feedback; full static-state error feedback; limit cycles; master-slave synchronization; matrix inequalities; parameter mismatch; quadratic Lyapunov function; robust synthesis; robustness criterion; stable equilibria; synchronization error bound; synchronization schemes; uniform synchronization; Asymptotic stability; Circuit synthesis; Control theory; Feedback; Linear matrix inequalities; Lyapunov method; Master-slave; Robustness; Sufficient conditions; Uncertainty;
Journal_Title :
Circuits and Systems I: Fundamental Theory and Applications, IEEE Transactions on